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CombiMatrix microarray imager combimatrix
Microarray Imager Combimatrix, supplied by CombiMatrix, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microarray+imager+combimatrix/microarray+imager/pm29280155-86-8-10
Average 90 stars, based on 1 article reviews
microarray imager combimatrix - by Bioz Stars, 2026-10
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Article Title: Nanosecond pulsed electric field incorporation technique to predict molecular mechanisms of teratogenicity and developmental toxicity of estradiol-17β on medaka embryos.
Article Snippet: Department of Creative Engineering, National Institute of Technology, Ariake College, 150 Higashi‐Hagio, Omuta, Fukuoka 836‐8585, Japan Graduate School of Agriculture, Ehime University, 3‐5‐7 Tarumi, Matsuyama 790‐8566, Japan Computer Science and Systems Engineering, Kyushu Institute of Technology, 680‐4 Kawazu, Iizuka, Fukuoka 820‐0067, Japan Mizuki Biotech, Co., Ltd., 1‐1 Hyakunenkouen, Kurume, Fukuoka 839‐0864, Japan Faculty of Environmental and Symbiotic Sciences, Prefectural University of Kumamoto, 3‐1‐100 Tsukide, Higashi‐ku, Kumamoto 862‐ 8502, Japan Correspondence Nobuaki Tominaga, 150 Higashi‐Hagio, Omuta, Fukuoka 836‐8585, Japan.. Email: tominaga@ariake‐nct.ac.jp Funding information Japan Society for the Promotion of Sciences, Japan; Grants‐in‐Aid for Scientific Research(B), Grant/Award Number: 16H02990

Microarray:

Article Title: Nanosecond pulsed electric field incorporation technique to predict molecular mechanisms of teratogenicity and developmental toxicity of estradiol-17β on medaka embryos.
Article Snippet: Department of Creative Engineering, National Institute of Technology, Ariake College, 150 Higashi‐Hagio, Omuta, Fukuoka 836‐8585, Japan Graduate School of Agriculture, Ehime University, 3‐5‐7 Tarumi, Matsuyama 790‐8566, Japan Computer Science and Systems Engineering, Kyushu Institute of Technology, 680‐4 Kawazu, Iizuka, Fukuoka 820‐0067, Japan Mizuki Biotech, Co., Ltd., 1‐1 Hyakunenkouen, Kurume, Fukuoka 839‐0864, Japan Faculty of Environmental and Symbiotic Sciences, Prefectural University of Kumamoto, 3‐1‐100 Tsukide, Higashi‐ku, Kumamoto 862‐ 8502, Japan Correspondence Nobuaki Tominaga, 150 Higashi‐Hagio, Omuta, Fukuoka 836‐8585, Japan.. Email: tominaga@ariake‐nct.ac.jp Funding information Japan Society for the Promotion of Sciences, Japan; Grants‐in‐Aid for Scientific Research(B), Grant/Award Number: 16H02990

Article Title: Differential expression microarrays reveal candidate genes potentially associated with reproductive dysfunction of captive-reared prawn Penaeus monodon
Article Snippet: Contents lists available at SciVerse ScienceDirect Aquaculture j ourna l homepage: www.e lsev ie r .com/ locate /aqua-on l ine Differential expression microarrays reveal candidate genes potentially associated with reproductive dysfunction of captive-reared prawn Penaeus monodon Philip Brady a,b, Abigail Elizur a,c,⁎, Scott F. Cummins c, Nguyen H. Ngyuen c, Richard Williams b, Wayne Knibb c a The Queensland Department of Primary Industries and Fisheries, Animal Science, Bribie Island, Queensland 4507, Australia b School of Land, Crop and Food Sciences, The University of Queensland, St Lucia, Brisbane, Queensland 4072, Australia c Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, Maroochydore, Queensland 4558, Australia ⁎ Corresponding author at: Faculty of Science, Healt University of the Sunshine Coast, Maroochydore, Qld 5459 4813; fax: +61 7 5430 2889.. E-mail address: aelizur@usc.edu.au (A. Elizur).. 0044-8486/$ – see front matter © 2013 Elsevier B.V. All http://dx.doi.org/10.1016/j.aquaculture.2013.02.038 a b s t r a c t a r t i c l e i n f o Article history: Received 18 September 2012 Received in revised form 29 December 2012 Accepted 26 February 2013 Available online 6 March 2013 Keywords: Penaeus monodon Reproductive dysfunction Microarrays The Black tiger prawn Penaeus monodon is an internationally significant aquaculture species.



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CombiMatrix microarray imager combimatrix
Microarray Imager Combimatrix, supplied by CombiMatrix, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microarray+imager+combimatrix/microarray+imager/pm29280155-86-8-10
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Schematic of the CLADE approach. CLADE as utilized in this study starts at the top of the schematic with an initial choice of DNA sequences. These sequences may be generated entirely in silico , or optionally, as with some of the sequences here, utilizing prior knowledge generated in vitro . These sequences are synthesized on a custom <t>microarray</t> and bound with the chosen ligand, here the APC protein. Analysis of binding intensities gives a distribution of fitnesses; the frequency distribution of Generation 1 binding to APC protein is shown by way of example. Some of these sequences are selected in silico , based on the in vitro score distribution, here using tournament selection (see Materials and methods section). These sequences are then mutated in silico to generate a new sequence set which can then be synthesised in vitro , and so on round the cycle as often as is required. The final aptamer set offers a greatly increased binding affinity to the ligand.
Microarray Imager Combimatrix Microarray Imager, supplied by CombiMatrix, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microarray+imager+combimatrix/microarray+imager/pmc02615635-127-0-3
Average 90 stars, based on 1 article reviews
microarray imager combimatrix microarray imager - by Bioz Stars, 2026-10
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Schematic of the CLADE approach. CLADE as utilized in this study starts at the top of the schematic with an initial choice of DNA sequences. These sequences may be generated entirely in silico , or optionally, as with some of the sequences here, utilizing prior knowledge generated in vitro . These sequences are synthesized on a custom microarray and bound with the chosen ligand, here the APC protein. Analysis of binding intensities gives a distribution of fitnesses; the frequency distribution of Generation 1 binding to APC protein is shown by way of example. Some of these sequences are selected in silico , based on the in vitro score distribution, here using tournament selection (see Materials and methods section). These sequences are then mutated in silico to generate a new sequence set which can then be synthesised in vitro , and so on round the cycle as often as is required. The final aptamer set offers a greatly increased binding affinity to the ligand.

Journal: Nucleic Acids Research

Article Title: Array-based evolution of DNA aptamers allows modelling of an explicit sequence-fitness landscape

doi: 10.1093/nar/gkn899

Figure Lengend Snippet: Schematic of the CLADE approach. CLADE as utilized in this study starts at the top of the schematic with an initial choice of DNA sequences. These sequences may be generated entirely in silico , or optionally, as with some of the sequences here, utilizing prior knowledge generated in vitro . These sequences are synthesized on a custom microarray and bound with the chosen ligand, here the APC protein. Analysis of binding intensities gives a distribution of fitnesses; the frequency distribution of Generation 1 binding to APC protein is shown by way of example. Some of these sequences are selected in silico , based on the in vitro score distribution, here using tournament selection (see Materials and methods section). These sequences are then mutated in silico to generate a new sequence set which can then be synthesised in vitro , and so on round the cycle as often as is required. The final aptamer set offers a greatly increased binding affinity to the ligand.

Article Snippet: Image analysis used Combimatrix Microarray Imager ( https://webapps.combimatrix.com/customarray/customarrayHome.jsp ).

Techniques: Generated, In Silico, In Vitro, Synthesized, Microarray, Protein Binding, Binding Assay, Selection, Sequencing